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首页> 外文期刊>The Biochemical Journal >Purification of A1 adenosine receptor-G-protein complexes: effects of receptor down-regulation and phosphorylation on coupling.
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Purification of A1 adenosine receptor-G-protein complexes: effects of receptor down-regulation and phosphorylation on coupling.

机译:A1腺苷受体-G蛋白复合物的纯化:受体下调和磷酸化对偶联的影响。

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We examined the effects of exposing A1 adenosine receptors (A1ARs) to an agonist on the stability and phosphorylation state of receptor-guanine nucleotide-binding regulatory protein (R-G-protein) complexes. Non-denatured recombinant human A1ARs extended on the N-terminus with hexahistidine (His6) and the FLAG (Asp-Tyr-Lys-Asp-Asp-Asp-Asp-Lys) epitope (H/F) were purified to near homogeneity from stably transfected Chinese-hamster ovary (CHO)-K1 cells. Purified receptors have pharmacological properties similar to receptors in membranes. G-proteins were co-purified with 15+/-2% of H/F-A1AR unless receptor-G-protein (R-G) complexes were uncoupled by pre-treating cell membranes with GTP. By silver staining, purified A1AR-G-protein complexes contain receptors, G-protein alpha and beta subunits and an unidentified 97 kDa protein. Pretreating intact cells with N6-cyclopentyladenosine (CPA) for 24 h decreased both the total number of receptors measured in membranes and the number of purified A1ARs by about 50%. In contrast, pretreating cells with CPA decreased the number of R-G complexes measured in membranes (54+/-6%) significantly less than it decreased the number of purified R-G complexes (78+/-3%) as detected by 125I-N6-(4-aminobenzyl)adenosine binding or by Western blotting Gialpha2. The effect of CPA to decrease the fraction of receptors purified as R-G complexes was not associated with any change in low-level A1AR phosphorylation (found on serine), or low-level phosphorylation of G-protein alpha or beta subunits or the 97 kDa protein. These experiments reveal a novel aspect of agonist-induced down-regulation, namely a diminished stability of receptor-G-protein complexes that is manifested as uncoupling during receptor purification.
机译:我们检查了将A1腺苷受体(A1ARs)暴露于激动剂对受体-鸟嘌呤核苷酸结合调节蛋白(R-G-蛋白)复合物的稳定性和磷酸化状态的影响。从六价组氨酸(His6)和FLAG(Asp-Tyr-Lys-Asp-Asp-Asp-Asp-Lys)表位(H / F)在N端延伸的非变性重组人A1ARs从稳定地纯化到接近同质转染的中国仓鼠卵巢(CHO)-K1细胞。纯化的受体具有类似于膜受体的药理特性。除非通过GTP预处理细胞膜使受体-G-蛋白(R-G)复合物解偶联,否则G-蛋白应与15 +/- 2%的H / F-A1AR共纯化。通过银染,纯化的A1AR-G蛋白复合物包含受体,G蛋白α和β亚基以及一个未知的97 kDa蛋白。用N6-环戊基腺苷(CPA)对完整细胞进行预处理24小时,可使膜中检测到的受体总数和纯化的A1AR数量均减少约50%。相比之下,用CPA预处理的细胞减少了在膜中测得的RG复合物的数量(54 +/- 6%),远少于减少125I-N6-检测到的纯化的RG复合物的数量(78 +/- 3%)。 (4-氨基苄基)腺苷结合或通过Western印迹Gialpha2。 CPA减少纯化为RG复合物的受体比例的作用与低水平A1AR磷酸化(在丝氨酸上发现)或G蛋白α或β亚基或97 kDa蛋白的低水平磷酸化没有任何关系。这些实验揭示了激动剂诱导的下调的新方面,即受体-G-蛋白复合物的稳定性降低,这在受体纯化过程中表现为解偶联。

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